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Full DC Inverter CMV System
Control System
Technical Support Division
2014-12-1
GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
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GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
Full DC Inverter CMV System - Control System
1. Outdoor Unit and Indoor Unit PCB
2. Communication System
3. Controllers
Content
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Full DC Inverter CMV System - Control System
1. Outdoor unit and indoor unit PCB
1.1 Outdoor unit main control board.
1.1.1 Outdoor unit PCB outlook
1 Functional port for phase sequence detection 17 Input port for detection of the system high pressure
2 Power supply input of mainboard and module transformers 18 Port for detection of the outdoor ambient temperature and the condenser coil temperature
3 Program download port 1 19 Port to detect the primary side current A converter and B inverter compressors
4 SV7,SV8, outlet (Reserve) 20 Input port for signal of the system low-pressure detector switch
5 Drive ports of the electronic expansion valve 1 21 Input port for signal of the system high-pressure detector switch
6 Drive ports of the electronic expansion valve 2 22 Control port of the DC fan 2 (right fan)
7 SV1,SV2,SV3,SV4 outlet 23 Control port of the DC fan 1 (left fan and single fan)
8 Drive ports of the electronic expansion valves 3 and 4 (reserved) 24 Interface for electric meter for online control and charging of the outdoor unit
9 SV5,SV6,4-WAY outlet 25 Port for indoor-outdoor unit communications and indoor unit network wiring
10 F1, F2, POWER, HEATER outlets 26 Program download port 2
11 Power output of mainboard transformer 27 Interface for the exhaust sensor of No.2 frequency-variable compressor
12 Power output of module board transformer 28 Interface for the exhaust sensor of No.1 frequency-variable compressor
13 IPM module 15V power port 29 Input port for detection of the system low pressure
14 Module board communication port 2 30 Reserved
15 Module board communication port 1 31 Reserved
16 Communication port between outdoor units 32 Reserved
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1.1.2 Dial codes definition
SW4 Parameter setting for night time silent operation
Meaning
After 6 hours of daytime
peak temperature, night
time silent operation start,
last for 8 hours, then return
to normal operation.
After 8 hours of daytime
peak temperature, night
time silent operation start,
last for 10 hours, then
return to normal operation.
After 6 hours of daytime
peak temperature, night
time silent operation start,
last for 12 hours, then
return to normal operation.
After 8 hours of daytime
peak temperature, night
time silent operation start,
last for 8 hours, then return
to normal operation.
Demonstration
(Default setting)
Remarks It is available only when user turn on the night time silent operation mode in SW8.
Night time silent operation mode is default ON.
SW5
Outdoor fan ESP setting
Meaning Standard static
pressure
Low static
pressure
Middle static
pressure
High static
pressure Silence Ultra-silence
Demonstration
(Default setting)
SW4 SW12
SW15
SW10 SW9
SW13
SW5
SW7 SW11
SW8
SW6
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SW6 Outdoor unit address setting
Meaning Master unit Slave unit Slave unit Slave unit
Demonstration
Poniting to 0
Poniting to1
Poniting to 2
Poniting to 3
Remarks Only 0,1,2,3 is available, address bigger than 3 will cause system failure.
SW7
1. System first start time setting
2. Snow-blowing function: when outdoor temperature is lower than 0°C and system is standby, every one hour
outdoor fan motor will turn on for 30 seconds.
Meaning
1. System can be start
only after power on
for 12 minutes.
2. Snow-blowing
function is OFF.
1. System can be start
only after power on
for 3 minutes.
2. Snow-blowing
function is OFF.
1. System can be start
only after power on
for 12 minutes.
2. Snow-blowing
function is ON.
1. System can be start
only after power on
for 3 minutes.
2. Snow-blowing
function is ON.
Demonstration
1 2
ON
(Default setting)
1 2
ON
1 2
ON
1 2
ON
Remarks DO NOT change this setting without professional guidance.
SW8 Turn ON or OFF night time silent operation mode and automatically addressing
Meaning
1. Night time
silent operation
mode is ON
2. Automatically
addressing is
ON.
1. Night time
silent operation
mode is ON.
2. Automatically
addressing is
OFF.
——
1. Night time
silent operation
mode is OFF.
2. Automatically
addressing is
ON.
1. Night time
silent operation
mode is OFF.
2. Automatically
addressing is
OFF.
Demonstration
(Default setting)
Remarks When automatically addressing is OFF, user need to set indoor unit address manual by indoor unit address setting
controller.
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SW9 Operation mode restriction setting
Meaning Heating priority Cooling priority First start mode
priority Heating only Cooling only
Demonstration
(Default setting)
Remarks When automatically addressing is OFF, user need to set indoor unit address manual by indoor unit address setting
controller.
SW11
Outdoor unit PCB selector
Meaning 8HP 10HP 12HP 14HP 16HP 18HP
Demonstration
Poniting to 0
Poniting to1
Poniting to 2
Poniting to 4
Poniting to 4
Poniting to 5
SW12 PCB identification
Meaning For 380V-415/3PH/50Hz & 380V-415/3PH/60Hz For 280V-230V/3PH/60Hz
Demonstration
(Default setting)
Remarks DO NOT change this setting without professional guidance.
SW3: Forced cooling button
1) After pressing it once, all indoor units and outdoor units will start cooling, no matter what mode they are running on, no matter
whether they are ON or OFF.
2) The forced cooling function is available for master unit only.
3) During forced cooling mode.
All indoor EXVs open to 300 pulses.
All indoor fans are in high speed.
All compressors are ON.
All outdoor fan motors are OFF
Outdoor EXVs opens to 480 pulses
SV6 is ON
4) When program starts:
All the compressors are on
Indoor fan is running at high speed
5) When the process is last for 1h or the button is pressed again, program will quit.
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1.1.3 Query procedures.
No. Display Content Remarks
/ - - Quantity of indoor units which can be
communication with outdoor unit Displays when system standby
/ - - Inverter compressor frequency Displays when system is running
1 1 - - Outdoor unit’s address 0(master unit),1(slave unit),2(slave unit),3(slave unit),4(slave unit)
2 2 - - Outdoor unit capacity 8(HP), 10(HP), 12(HP), 14(HP), 16(HP), 18(HP)
3 3 - - Outdoor unit quantity Only available for master unit
4 4 - - All outdoor units total capacity Total HP
5 5 - - All indoor units total capacity demand Only available for master unit
6 6 - - Total amended capacity demand Only available for master unit
7 7 - - Operation mode 0 (OFF or Fan only) 2 (Cooling) 3 (Heating) 4 (Forced cooling)
8 8 - - Outdoor unit actual capacity output Actual output HP
9 9- - Outdoor fan speed range 0-15
10 10 - - T2/T2B (indoor coil average temperature) Display in actual value
11 11 - - T3 (outdoor coil temperature) Display in actual value
12 12 - - T4 (ambient temperature) Display in actual value
13 13 - - A/B Inverter compressor discharge
temperature 1 Display in actual value
14 14 - - A/B Inverter compressor discharge
temperature 2 Display in actual value
15 15 - - EXV opening Actual pulse = Display value ×8
16 16 - - A/B Inverter compressor current Display in actual value
17 17 - - AC voltage Display in actual value
18 18 - - —— 0
19 19 - - Suction pressure Actual value = Display value ×0.01MPa
20 20 - - Discharge pressure Actual value = Display value ×0.1MPa
21 21 - - A/B System secondary current Display in actual value
22 22 - - A/B System secondary voltage Actual value = Display value * 40
23 23 - - Priority operation mode 0: Heating first 1: cooling first 2: First start first 3: Heating only
4: Cooling only 5: Reserved 6: Reserved
24 24 - - Connected indoor unit quantity Indoor unit that is able to communicating to master outdoor unit
25 25 - - Last protection code or error code Display 00 if no protection code or error code.
26 26 - - / End
Normal display:
Number of indoor units in time of standby, while compressor running frequency if any capacity demand is enabled (The number of indoor
units refers to that of the indoor units able to communicate with outdoor units);
Mode of operation: 0-Off\Air supply; 1-Air supply; 2-cooling; 3- heating; 4- forced cooling;
Limit to indoor unit operation modes: 0- Heating First; 1- Refrigeration First; 2- First Enabled First;3- Heating Only; 4-Refrigeration Only;
5- Test Mode I; 6- Test Mode II.
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1.1.4 Outdoor error codes.
Code Malfunction or protection remark
E0 Outdoor unit communication malfunction Only slave unit displays
E1 Phase sequence malfunction
E2 Communication between master outdoor unit and indoor units
E3 reserved
E4 Ambient temperature sensor malfunction
E5 reserved
E6 Outdoor heat exchanger temperature sensor malfunction
E7 reserved
E8 Outdoor unit address incorrect
E9 AC voltage protection AC voltage is too low
H0 Communication malfunction between DSP and 0547
H1 Communication malfunction between 0537 and 0547
H2 Outdoor unit quantities decreasing malfunction Only master unit displays
H3 Outdoor unit quantities increasing malfunction Only master unit displays
H4 There is 3 times P6 protection in 30 minutes. Repower on to clear the error code.
H5 There is 3 times P2 protection in 30 minutes. Repower on to clear the error code.
H6 There is 3 times P4 protection in 100 minutes. Repower on to clear the error code.
H7 Indoor unit quantities decreasing malfunction over 3 minutes Recover when indoor unit quantity is correct
H8 Discharge pressure sensor error When discharge pressure is lower than 0.3MPa
H9 There is 3 times P9 protection in 30 minutes. Repower on to clear the error code.
P1 High pressure protection
P2 Low pressure protection
P3 Inverter compressor over current protection AC side overcurrent
P4 Discharge temperature sensor protection
P5 Heat exchanger temperature sensor protection Condenser tube temperature is bigger than 65℃
P6 Inverter module protection
P7 Fix compressor 1 current protection
P8 Fix compressor 2 current protection
P9 Fan module protection
L0 Inverter compressor malfunction
Error code after P6 protection
L1 DC generatrix low voltage protection
L2 DC generatrix high voltage protection
L3 reserved
L4 MCE malfunction/simultaneously/cycle loop
L5 Zero speed protection
L6 reserved
L7 Wrong phase protection
L8 Speed difference >15Hz protection between the front and the back clock
L9 Speed difference >15Hz protection between the real and the setting speed
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1.2 Description of main control board of indoor unit.
1.2.1 There are five shapes of main control board that used to all types of indoor unit matching with New CMV outdoor unit.
1) Shape A
No. Content No. Content
1 Communication port of P Q E 9 EXV activation port
2 SW2 10 Transformer output port
3 Remote control port 11 Fan motor output interface
4 SW3 12 Transformer input port
5 Port for electric auxiliary heater 13 220V AC N interface
6 Port for display board and remote control receiver 14 220V AC L interface
7 SW1 15 Temperature sensor port
8 Download port 16 Remote control switch
1 4 2 3 5 6 7 8 9
10 11 12 13 14
15 16
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2) Shape B
No. Content No. Content
1 Communication port of P Q E 11 Transformer input port
2 Port for display board and remote control receiver 12 SW1
3 EXV activation port 13 Remote control port
4 Stepper motor control port (a total of 4 port) 14 Remote control switch
5 Fan motor output interface 15 SW3
6 Pump output interface 16 SW2
7 Transformer output port 17 The water level switch interface
8 220V AC N interface 18 Temperature sensor port
9 220V AC L interface 19 Download port
10 Port for electric auxiliary heater ─
3) Shape C
1 2 3 5 6 7 8
11 9
4 18
10 13 12 14 15 16 17
19
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No. Content No. Content
1 Communication port of P Q E 11 Transformer input port
2 Port for display board and remote control receiver 12 SW1
3 EXV activation port 13 Remote control port
4 Stepper motor control port (a total of 4 port) 14 Remote control switch
5 Fan motor output interface 15 SW3
6 Pump output interface 16 SW2
7 Transformer output port 17 The water level switch interface
8 220V AC N interface 18 Temperature sensor port
9 220V AC L interface 19 Download port
10 Port for electric auxiliary heater ─
4) Shape D
1 2
3
4 5 6 7 8
9 10 11 12 13 14
15
16 17
18
19
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Full DC Inverter CMV System - Control System
No. Content No. Content
1 Communication port of P Q E 11 SW2
2 Port for display board and remote control receiver 12 SW3
3 EXV activation port 13 Wired control switch
4 Stepper motor control port 14 SW8
5 Fan motor output interface ─
6 Temperature sensor port ─
7 220V AC N interface ─
8 220V AC L interface ─
9 Remote control port ─
10 SW1 ─
5) Shape E
1
3 4 5 2 6
7
8
9
10
11
12
13
33
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Full DC Inverter CMV System - Control System
No. Content No. Content
1 Communication port of P Q E 11 SW2
2 Port for display board and remote control receiver 12 SW3
3 EXV activation port 13 Wired control switch
4 Stepper motor control port (a total of 4 port) 14 SW8
5 Fan motor output interface ─
6 Temperature sensor port ─
7 220V AC N interface ─
8 220V AC L interface ─
9 Remote control port ─
10 SW1 ─
1 2
3 4 5 6
7
8 9
10
11
12 13
33
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Full DC Inverter CMV System - Control System
1.2.2 Error code & meanings
LED display LED light Meanings
FE TIMER and RUN both flash 4Hz, No address when indoor unit first time power on
E1 TIMER flashes at 4Hz Communication error between indoor and outdoor units
E2 RUN flashes 4Hz Temperature sensor T1 error
E3 RUN flashes 4Hz Temperature sensor T2 error
E4 RUN flashes 4Hz Temperature sensor T2B error
E5 ALARM flashes 0.5Hz, Outdoor unit error
E6 / Zero crossing detection error
E7 DEFOST flashes 0.5Hz, EEPROM error
E8 / Indoor fan motor error
E9 / Wired controller communication error
EE ALARM flashes 4Hz Water level alarm error
EF DEFOST flashes 4Hz Mode conflict
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Full DC Inverter CMV System - Control System
1.2.3 SW2, only available in heating mode.
Name Switch number 1,2 of SW2
Function Reserved
Setting
1 2 3 4 5 6 7 8
Default setting
Name Switch number 3,4 of SW2
Function
Heating temperature compensation value selection. When temperature difference between setting temperature and
room temperature is higher than the setting value, indoor fan motor turns off.
DO NOT change the default setting without professional guidance.
Setting
1 2 3 4 5 6 7 8
6 ˚C
Default setting
1 2 3 4 5 6 7 8
2 ˚C
1 2 3 4 5 6 7 8
4 ˚C
1 2 3 4 5 6 7 8
8 ˚C
ON
OFF
ON
OFF
ON
OFF
ON
OFF
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Name Switch number 5,6 of SW2
Function
Temperature selection of turning off fan motor in anti-cold-wind-blow mode. When indoor heat exchanger
temperature is lower than the setting value, indoor fan motor turns off.
DO NOT change the default setting without professional guidance.
Setting
1 2 3 4 5 6 7 8
15 ˚C
Default setting
1 2 3 4 5 6 7 8
20 ˚C
1 2 3 4 5 6 7 8
24 ˚C
1 2 3 4 5 6 7 8
26 ˚C
ON
OFF
ON
OFF
ON
OFF
ON
OFF
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Name Switch number 7,8 of SW2
Function
Indoor fan motor stopping gap selection in heating mode.
When room temperature gets to (set point + temperature value in Switch number 3,4 of SW2), at this moment indoor
unit capacity requirement is 0, indoor fan motor turns off for 4 minutes ( this stopping duration time can be changed
by below setting). After that indoor fan will run in low speed for 1 minute (this timing is fixed), if indoor unit
capacity requirement is still 0, then indoor fan motor keeps off for 4 minutes, and then cycles.
DO NOT change the default setting without professional guidance.
Setting
1 2 3 4 5 6 7 8
4 minutes
Default setting
1 2 3 4 5 6 7 8
8 minutes
1 2 3 4 5 6 7 8
12 minutes
1 2 3 4 5 6 7 8
16 minutes
1.2.4 SW8, reserved, leave it as default setting (both switches dial down).
ON
OFF
ON
OFF
ON
OFF
ON
OFF
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1.3 Electric wiring installations
1.3.1 Highlights of electrical installation
1) Please separately design the special power of indoor units and outdoor units.
2) The power adopts special circuit, and installs circuit breaker and manual switch.
3) The indoor units’ power, circuit breaker and manual switch connecting to the same outdoor unit must be general. All indoor units
must be the same circuit, and must simultaneously on or off; otherwise, system life will seriously effect, and appear the situation
not to solve.
4) The communication line between indoor units and outdoor units please use 2-core shielded wiring, while don’t use the multi core
wiring without shielded affect, for the interference is reduced each other
5) Purchased wiring, parts and materials should be in compliance with the local and national regulations.
6) All field wiring construction should be finished by qualified electrician.
7) Air conditioning equipment should be grounded according to the relevant local and national electrical regulations.
8) Current leakage protection switch should be installed (select current leakage breaker in light of the 1.5-2 times of total loading
rated current.)
9) When connecting wiring and wire holder, use cable clamp to fix and make sure no exposure.
10) Refrigerant piping system and wiring system of indoor and outdoor unit belongs to the different system.
11) Do not connect the power wire to the terminal of signal wire.
12) When power wire is parallel with signal wire, put wires to their own wire tube and remain proper gap (the current capacity of
power wire is: 10A below 300mm, 50A below 500mm).
13) Voltage discrepancy of power wire terminal (side of power transformer) and end voltage (side of unit) should be less than 2%. If
its length could not be shortened, thicken the power wire. Voltage discrepancy between phases shall not pass 2% rated value and
Current discrepancy between highest and lowest phase should be less than 3% rated value.
1.3.2 Selection of wiring
1.3.2.1 The selection of wiring area shall in accordance with the requirements below:
1) Voltage lose of wire shall meet the requirement of terminal voltage for normal operation and startup.
2) The wiring current-carrying capacity determined by installed method and environment is not less than the largest current of unit.
3) Conductor shall ensure the stability of movement and heating.
4) The conductor’s smallest sectional area should satisfy the requirement of mechanical strength.
5) When earth protection line (shortly called PE line) is made of material the same as phase line, the smallest sectional area of PE
line should be in accordance with the regulation below:
Sectional area of core to phase line (mm²) Smallest sectional area of PE line(mm²)
S≤16 S
16<S≤35 16
S>35 S/2
1.3.2.2 Distribution highlights of distribution wiring
1) When distributing wiring, select wirings with different colors for phase line, zero line and protection earth according to relevant
regulations.
2) The power wire and control wire of concealed engineering is prohibited to bind together with refrigerant piping. It is necessary to
pass through wire tube and be distributed separately, and the gap between control line and power wire should be 500mm at least.
3) When distributing wiring by passing through pipe, the following should be paid attention to:
Metal wire tube could be used in indoor and outdoor, but it is not suitable to the place with acid – alkali corrosion.
Plastic wire tube is generally used in indoor and place with corrosion, but it is not suitable to situation with
mechanical damage.
The wiring through pipe shall not be in the form with ends jointing. If there must be joint, connection box should be
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Full DC Inverter CMV System - Control System
installed at the corresponding place.
The wiring with different voltage should not pass through the same wire tube.
Total sectional area of wiring through wire tube shall not exceed 40% valid area of stuffing tube.
Fixing point of wire tube support shall follow the standard below:
Normal diameter of wire tube
(Mm)
Largest gap between fixed points of wire tube
Metal pipe Plastic pipe
15~20 1.5m 1m
25~32 2m 1.5m
40~50 2.5m 2m
1.3.2.3 Outdoor unit power wiring selection
1) Separate Power Supply without power facility.
Model Power supply
The shortest wiring diameter (mm2) Manual switch (A)
Circuit breaker
≤20m ≤50m GND Capacity Fuse
CMV-D252W/ZR1
380-415V
3 Phase
50Hz
4×10 4×16 10 32 25 <100mA, 0.1sec
CMV-D280W/ZR1 4×10 4×16 10 32 25 <100mA, 0.1sec
CMV-D335W/ZR1 4×10 4×16 10 50 40 <100mA, 0.1sec
CMV-D400W/ZR1 4×16 4×25 16 50 40 <100mA, 0.1sec
CMV-D450W/ZR1 4×16 4×25 16 50 40 <100mA, 0.1sec
CMV-D500W/ZR1 4×16 4×25 16 63 50 <100mA, 0.1sec
Note: The length in the table equals the value of power cord connecting outdoor units, indicating the condition that the voltage
dropping range is within 2%. If the length exceeds the above figure, please select the wire diameter according to relevant standard.
2) With power facilities:
a) Case 1:
Outdoor unitpower supply
Leakageprotector
Manualswitch
Outdoor unit
Outdoor unit
Outdoor unit
Outdoor unit
GND
GND
GND
GNDBranch box
LeakageprotectorManualswitch
380-415V 3N~ 50Hz
(a)
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b) Case 2:
Note:
Select power wire for these five models separately according to relevant standard.
The wiring diameter and the length in the table indicate the condition that the voltage dropping range is within 2%. If
the length exceeds the above figure, please select the wire diameter according to relevant standard.
3) Power wire selection
Power wiring includes the main wire (a) connecting to branch box and the wire (b) between branch box and power facilities.
Please select the wire diameter according to the following requirement.
a) Diameter of main wire (a): depends on the total horse power (HP) of outdoor unit (See (5)).
Example:
In system: 8HP×1 unit+8HP×1 unit+10HP×1 unit
So totally 26HP → See (5) → size of wire is 25mm2 (within 20m)
b) Diameter of wire (b): depends on the number of combined outdoor unit.
If outdoor unit quantity ≤ 5, the wire (b) diameter selection is same as main wire (a) selection (See (5)).
If outdoor unit quantity > 5, there will be 2 electric control boxes, the wire (b) diameter selection depends on the total
horse power (HP) of outdoor units connecting to each electric control box (See (5)).
4) Select the capacity of manual switch and fuse of the branch box depends on the total horsepower (HP).
Total capacity(HP) Manual switch(A) Fuse(A) Total capacity(HP) Manual switch(A) Fuse(A)
8-10 32 25 36- 40 110 90
12-14 50 40 42- 44 125 100
16-18 63 50 46- 50 150 125
20-22 80 63 52-60 200 150
24-28 90 70 62-72 250 200
30-34 100 80
LeakageprotectorManualswitch
GND
Branch box
Outdoorunit
GNDOutdoorunit
GNDOutdoorunit
GNDOutdoorunit
GNDOutdoorunit
GNDOutdoorunit
(b)
(a)
Power facilities 1
(with leakage protector)
Power facilities 2
(with leakage protector)
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5) Reference table of the cable size for each capacity
Total
capacity
(HP)
Minimum wire diameter (mm2 ) Total
capacity
(HP)
Minimum wire diameter (mm2 )
Wire length ≤ 20m 20m<Wire length≤ 50m Wire length ≤ 20m 20m<Wire length≤ 50m
8 10 16 38 35 50
10 10 16 44 50 70
12 10 16 46 50 70
14 16 25 48 50 70
16 16 25 50 70 95
18 16 25 52 70 95
20 16 25 54 70 95
22 16 25 56 90 110
24 25 35 58 90 110
26 25 35 60 90 110
28 25 35 62 90 110
30 35 50 64 90 110
32 35 50 66 90 110
34 35 50 68 90 110
36 35 50 70 90 110
40 35 50 72 90 110
42 50 70
Remark:
The above selection is for reference.
For an actual electrical project, it should be considered that the cable layout, space between cable and surroundings, etc.
1.5.5 Indoor unit power wiring selection
Note:
Set refrigerant piping system, signal wires between indoor-indoor unit, and that between outdoor-outdoor units into one system.
Please do not put the signal wire and power wire in the same wire tube; keep distance between the two tubes. (Current capacity
of power supply: less than 10A--300mm, less than 50A--500mm.)
Make sure to set address of outdoor unit in case of parallel multi-outdoor units.
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2. Communication system
2.1 Control system introduction
2.1.1 Connecting highlights of control line (RS-485 communication)
1. The control line should be shielded wire (wire diameter of the core wire≥0.75 mm2). Using other wiring shall create signal
interference, thus leading to error operation.
2. The shielded nets at the two sides of shielded wires are either grounded to the earth, or connected with each other and jointed to
the sheet metal along to the earth.
3. Control wire could not be bound together with refrigerant pipeline and power wire. When power wire and control wire is
distributed in parallel form, keep gap between them above 300mm so as to preventing signal interference.
4. Control wire could not form closed loop.
5. Control wire has polarity, so be careful when connecting.
2.1.2 Selection of control wire specification
The ordinary shielded wire includes:
Model Name
AVP Copper core PVC insulation shielded wire
AVP-105 Heat-resistant 105˚C PVC insulation shielded wire
RVP PVC insulation shielded flexible wire
RVP-105 Heat-resistant 105˚C PVC insulation shielded flexible wire
RVVP PVC insulation shielded PVC sheath flexible wire
RVVP1 PVC insulation entangled shielded PVC sheath flexible wire
2.1.3 Signal wire of indoor/outdoor units
Signal line shall adopt 2-core shielded wire with an area above 0.75 mm2, the 2 cores are connected to P,Q or H1,H2 terminals, the shielded layer are connected to E terminals.
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Full DC Inverter CMV System - Control System
L1 L2 L3 N
A B C N H1 H2 E P Q E A B C N A B C NH1 H2 E P Q E H1 H2 E P Q E
L N P Q E L N P Q E L N P Q E
Main power Supply (380V~415V/3PH/50Hz)
L1 L2 L3 N
Outdoor unit (Master) Outdoor unit (Slave) Outdoor unit (Slave)
Indoor unit Indoor unit Indoor unit
Sheilded layer
Power
distributor
Communication wired between outdoor units
Communication wired between outdoor units
Sheilded layer
Indoor unit power cable
Outdoor unit power cable
Power distributor Power distributor Power distributor
Note:
The signal connecting line between outdoor units, indoor and outdoor units and indoor units has polarity. When connecting, be
careful to prevent error connection.
Signal line shall adopt 2-core shielded wire with an area above 0.75 mm2, the 2 cores are connected to P,Q or H1,H2 terminals,
the shielded layer are connected to E terminals.
Do not bind signal line and copper pipe together with belting.
Make sure that the shield metal layer should be grounded well indoor control box in order to prevent interference.
it’s forbidden to connect 200V or above high-volt live wire to the communication terminal.
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GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
Full DC Inverter CMV System - Control System
2.1.4 Correct connection
Note: Shielded layer should be connected to steel pane of electrical control box.
2.1.5 Typical wrong connection
1) Loop connection of signal wire
2) Star connection of signal wire
a) Star connection of part signal wires
b) Star connection of all signal wires
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GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
Full DC Inverter CMV System - Control System
3) Reverse connection of signal wire
a) Outdoor unit to indoor unit
b) Indoor unit to indoor unit
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GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
Full DC Inverter CMV System - Control System
3. Controllers
3.1 Wireless remote controller
The model of the following remote controller is Jingling common remote controller
3.1.1 Buttons and functions descriptions
1) MODE: Press the key to switch modes in order: AUTO →COOL →DRY →HEAT →FAN →AUTO
2) ON/OFF: Push this button to turn on the unit. Push the button again to turn off the unit.
3) FAN SPEED: This button is used for setting fan speed in the sequence that goes from AUTO, LOW, MED to HIGH, then back to
AUTO.
4) TIMER: Preset the time ON (start to operate) /the time OFF (turn off the operation) and regards hours as its union
5) TURBO: Reserved
6) LAMP: Used for selecting lamp being on or being off
7) CLEAN: Used for selecting hold purification or canceling purification or canceling purification
8) HOLD: Push this button to select hold mode and canceling hold mode.
9) SLEEP: Push this button to select sleep mode and canceling sleep mode
10) AIR FLOW: Push this button to select swing, stable wind, natural wind and circulating wind.
11) SWING: Push this switch button to change the louver angle.
12) TEMP: Push the button to increase the indoor temperature setting or to adjust the TIMER in a clockwise direction.
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GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
Full DC Inverter CMV System - Control System
3.1.2 LCD display indications:
1) AUTO,COOL,DAY,HEAT,FAN display
2) TEMPERATURE Display
3) SLEEP,LAMP,CLEAN,HOLD display
4) TIMER Display
3.2 Wired controller
3.2.1 The remote control board is responsible for the operational status of the system through the control button, through the LCD to display
the working status of the whole system, responsible for system control board for communication
3.2.2 Safety precautions:
1) Please read this safety precaution carefully, before installation. Do observe the following safety precautions, for they are very
important.
2) Confirm there is no abnormal phenomenon during test operation after installation completed, then hand the manual to the user.
3) Installation must be conducted by professionals
4) Improper installation may cause electric shock or fire;
5) A random disassembly may cause abnormal operation or heating, which may result in fire.
6) Don't install it in a place where combustible gas easily leaks. Once combustible gas leaks and remains around Controller, fire may be
caused.
7) Wire must be suitable for the current of Controller. Otherwise electricity leakage or heating may be caused, which may result in fire.
8) Wire must be suitable for controller, never bring outside force to bear on the terminal. Otherwise wire break or heating may be caused,
which may result in fire.
3.2.3 Installation
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GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
Full DC Inverter CMV System - Control System
1) Do not install it in a place with oil, steam or sculpture gas, or else deform or malfunction may occur.
2) Wire controller installation notice:
Please refer to indoor unit installation manual for connecting between wire controller and indoor unit.
Circuit of wire controller is low voltage circuit. Never connect it with a standard 220V/380V circuit or put it into a same wiring
tube with the circuit.
The shield cable must be connected stable to the ground, or transmission may fail.
Do not attempt to extend the shield cable by cutting, if it is necessary, use Terminal Connection Block to connect.
After finishing connection, do not use Mugger to have the insulation check to the signal wire.
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GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
Full DC Inverter CMV System - Control System
3.3 Address setting remote controller
SET
ENTER
CHECK0
SET
CHECK
3.3.1 User’s instructions
1) The operation method in the address set mode
Press the "SET" key to enter the address set mode, while the triangle on the right side of the "SET" key light, the address
parameters display.
Press a certain numeric pad which corresponding to the tens-digit of a desired setting address parameters, and the tens-digit stop
blinking immediately after pressing the key, indicating the completion of a set of tens-digit.
Press a certain numeric pad again which corresponding to the ones-digit of a desired setting address parameters, and the
ones-digit stop blinking immediately after pressing the key, indicating the completion of a set of ones-digit.
Confirm whether the address of current set is right, and press the " ENTER " key of remote controller to send the address
parameters to the receiving light panel or wired controller of indoor unit if it is right; if not, press the "SET" key to reset address
parameters.
2) The operation method of address query
Press the “CHECK" key and enter the address query mode, the triangle on the right side of "CHECK" key lights and the address
parameters blinking.
Set the remote controller towards receiving light panel or wired controller and then press the "ENTER" key to send the request to
the indoor unit, the plate or wired controller connected to indoor unit will display relevant address parameters.
3.3.2 Notices
1) Address setting range of parameters must be 0 to 63; otherwise you can’t complete the parameters setting.
2) The methods and instructions of displaying indoor unit’s address
Ducted type indoor unit (with a wired controller): Execute address query operation or press the "CHECK" key of wired
controller once, the address display area of wired controller will indicate the current address parameters for 5 seconds and then
return to normal display.
Wall-mounted indoor unit (with digital display board): Execute address query operation or press the "EMERGENT" key of the
indoor electrical control board, digital tube flashes to indicate the current address parameters for 10 seconds and then return to
normal display.
4-way cassette indoor unit, floor ceiling indoor unit (with 4 LED light board): Execute address query operation or press and hold
the "EMERGENT" key on the light board for 5 to 10 seconds, according to four different LED display status (off, steady or
flashing) and tweet buzzer to indicate the address parameters, the light board return to the normal display and the buzzer resume
normal working condition after 10 seconds or loosen the lamp board "EMERGENT".
SET key: Press this key to enter the
address setting mode.
CHECK key: Press this key to enter the
address query mode.
Enter key: Press this key can send the set
address or the address query request to
indoor unit.
Numeric key: Press these key can set
address parameters, it is available only in
the address setting mode.
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GD CHIGO HEATING & VENTILATION EQUIPMENT CO., LTD.
Full DC Inverter CMV System - Control System
3) The table of the corresponding relationship between LED type and numeric.
Based on the number and type of LED lights, address parameters is the sum of number the LED corresponding to according to the table
below; if the LED is flashing, accumulate and increase 16 is the address of indoor unit; if buzzer tweet at the same time, accumulate and
increase 32 is the address of the indoor unit.
LED Corresponding numeric
Running light 8
Defrosting lamp 4
Timing lamp 2
Warning light 1
4) The table of the corresponding relationship between address parameters range and the light board & buzzer:
Address 4 LED display Tweet buzzer
0~15 steady quiet
16~31 flashing quiet
32~47 steady sound
48~63 flashing sound